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首页> 外文期刊>Advances in Aircraft and Spacecraft Science >Dynamic modeling of nonlocal compositionally graded temperature-dependent beams
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Dynamic modeling of nonlocal compositionally graded temperature-dependent beams

机译:非局部成分渐变温度相关梁的动态建模

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摘要

In this paper, the thermal effect on buckling and free vibration characteristics of functionally graded (FG) size-dependent Timoshenko nanobeams subjected to an in-plane thermal loading are investigated by presenting a Navier type solution for the first time. Material properties of FG nanobeam are supposed to vary continuously along the thickness according to the power-law form and the material properties are assumed to be temperature-dependent. The small scale effect is taken into consideration based on nonlocal elasticity theory of Eringen. The nonlocal equations of motion are derived based on Timoshenko beam theory through Hamilton's principle and they are solved applying analytical solution. According to the numerical results, it is revealed that the proposed modeling can provide accurate frequency results of the FG nanobeams as compared to some cases in the literature. The detailed mathematical derivations are presented and numerical investigations are performed while the emphasis is placed on investigating the effect of the several parameters such as thermal effect, material distribution profile, small scale effects, aspect ratio and mode number on the critical buckling temperature and normalized natural frequencies of the temperature-dependent FG nanobeams in detail. It is explicitly shown that the thermal buckling and vibration behaviour of a FG nanobeams is significantly influenced by these effects. Numerical results are presented to serve as benchmarks for future analyses of FG nanobeams.
机译:在本文中,通过首次提出Navier型解决方案,研究了平面内热负荷对功能梯度(FG)尺寸依赖性Timoshenko纳米束的屈曲和自由振动特性的热效应。 FG纳米束的材料特性根据幂律形式沿厚度连续变化,并且材料特性与温度有关。基于Eringen的非局部弹性理论,考虑了小尺度效应。基于哈密顿原理基于蒂莫申科梁理论推导了非局部运动方程,并应用解析解对其进行了求解。根据数值结果表明,与文献中的某些情况相比,所提出的模型可以提供FG纳米束的准确频率结果。给出了详细的数学推导,并进行了数值研究,同时重点研究了几个参数的影响,例如热效应,材料分布轮廓,小尺度效应,纵横比和模数对临界屈曲温度和归一化自然应力的影响。与温度相关的FG纳米束的频率的详细信息。明确表明,FG纳米束的热屈曲和振动行为受这些效应的显着影响。结果表明,数值结果可作为未来FG纳米束分析的基准。

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